石油化工安全环保技术 ›› 2026, Vol. 42 ›› Issue (2): 8-11.

• 事故分析与预防 • 上一篇    

液氯氯化法贵金属催化剂回收工艺优化与安全控制

周智鑫1,夏鹏1,覃京斌2,王海波1,谭辉1   

  1. 1. 湖北景深安全技术有限公司,湖北 宜昌 443000;
    2. 湖北誉辰新材料科技有限公司,湖北 宜昌 443000
  • 收稿日期:2025-11-17 接受日期:2026-03-15 出版日期:2026-04-20 发布日期:2026-05-12
  • 作者简介:周智鑫,男,2009年毕业于华中科技大学化学工程与工艺专业,现从事安全技术服务、咨询、风险分析评估、企业个性化解决方案等工作,工程师、二级安全评价师。E-mail: 11734752@qq.com

Chlorination-Based Recycling of Precious Metal Catalysts: Process Optimization and Safety Management

Zhou Zhixin1,Xia Peng1,Qin Jingbin2,Wang Haibo1,Tan Hui1,   

  1. 1. Hubei Jingshen Safety Technology Co., LTD., Yichang, Hubei, 443000;
    2. Hubei Yuchen New Material Technology Co., LTD., Yichang, Hubei, 443000.
  • Received:2025-11-17 Accepted:2026-03-15 Online:2026-04-20 Published:2026-05-12

摘要: 以石油化工行业废催化剂中钌回收为研究对象,提出工艺、设备、安全环保优化方案并实施技术改造项目。改造完成后,用统计学方法分析验证指标,用现代咨询方法分析经济和社会效益,最终提出涉氯工艺在贵金属催化剂回收工艺中的优化应用与安全控制智能化改造。结果显示,液氯氯化法贵金属催化剂回收工艺有较大优化空间,本次技术改造显著提高了钌金属回收率、氯气利用率,大幅度提升了装置的远程控制能力,降低了安全环保风险,为石油化工行业含钌废料中钌元素回收提供技术指导,实现循环可持续发展。

关键词: 石油化工, 贵金属催化剂, 钌回收, 工艺优化, 安全环保控制

Abstract: This study focuses on ruthenium recovery from spent catalysts in petrochemical industry and proposes optimized process, equipment, and safety and environmental protection solutions through technical retrofit. After the retrofit, statistical analysis was conducted to validate performance indicators, while modern consulting methods were employed to evaluate economic and social benefits. The research ultimately recommends intelligent safety control and optimized application of chlorine-based processes in precious metal catalyst recovery. The results demonstrate significant optimization potential in the liquid chlorine chlorination method for precious metal catalyst recovery. This technical retrofit has notably enhanced ruthenium metal recovery rates, improved chlorine utilization efficiency, significantly upgraded remote control capabilities and reduced safety and environmental risks. The findings provide technical guidance for the recovery of ruthenium from ruthenium-containing waste in the petrochemical industry, facilitating circular and sustainable development.

Key words: petrochemical, precious metal catalyst, ruthenium recovery, process optimization, safety and environmental control